Jadav, Shail und Lee, Dongheui (2026) Monocular Vision Based Control Framework for Grasping. In: 2026 IEEE/ASME International Conference on Advanced Intelligent Mechatronics, AIM 2026. IEEE. 2026 IEEE/ASME International Conference on Advanced Intelligent Mechatronics (AIM), 2026-07-07, Genova, Italy. doi: 10.1109/AIM65483.2026.11658051. ISBN 979-831953611-2. ISSN 2159-6247.
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Offizielle URL: https://ieeexplore.ieee.org/document/11658051
Kurzfassung
Grasping in unstructured environments requires handling objects with widely different mechanical properties, from soft and deformable items to rigid everyday objects. Most existing approaches address these categories separately and often rely on tactile sensing, object-specific models, or specialized grippers. In this paper, we present a unified monocular vision-based grasping framework that targets both soft and rigid objects within a single control pipeline, using only RGB input and a position-controlled gripper. The proposed system combines open-vocabulary object detection, image segmentation, boundary-aware point assignment, real-time point tracking, and monocular depth estimation to recover object motion and geometry from visual observations. A key component of the framework is a language-based stiffness estimation model that infers an object's expected compliance from its semantic description and provides an object-level prior for selecting the grasping strategy before contact. For deformable objects, grasp adaptation is governed by a Procrustes-based dissimilarity measure computed from tracked keypoints, which acts as a visual proxy for deformation. For rigid objects, the gripper width is regulated through the scaling of tracked point distances. We validate the proposed method in real-world pick-and-place experiments on a Franka Emika Research 3 arm using objects with substantially different mechanical properties.
| elib-URL des Eintrags: | https://elib.dlr.de/226738/ | ||||||||||||
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| Dokumentart: | Konferenzbeitrag (Vortrag) | ||||||||||||
| Titel: | Monocular Vision Based Control Framework for Grasping | ||||||||||||
| Autoren: |
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| Datum: | 25 August 2026 | ||||||||||||
| Erschienen in: | 2026 IEEE/ASME International Conference on Advanced Intelligent Mechatronics, AIM 2026 | ||||||||||||
| Referierte Publikation: | Ja | ||||||||||||
| Open Access: | Nein | ||||||||||||
| Gold Open Access: | Nein | ||||||||||||
| In SCOPUS: | Ja | ||||||||||||
| In ISI Web of Science: | Nein | ||||||||||||
| DOI: | 10.1109/AIM65483.2026.11658051 | ||||||||||||
| Verlag: | IEEE | ||||||||||||
| ISSN: | 2159-6247 | ||||||||||||
| ISBN: | 979-831953611-2 | ||||||||||||
| Status: | veröffentlicht | ||||||||||||
| Stichwörter: | visual grasping | ||||||||||||
| Veranstaltungstitel: | 2026 IEEE/ASME International Conference on Advanced Intelligent Mechatronics (AIM) | ||||||||||||
| Veranstaltungsort: | Genova, Italy | ||||||||||||
| Veranstaltungsart: | internationale Konferenz | ||||||||||||
| Veranstaltungsdatum: | 7 Juli 2026 | ||||||||||||
| HGF - Forschungsbereich: | Luftfahrt, Raumfahrt und Verkehr | ||||||||||||
| HGF - Programm: | Raumfahrt | ||||||||||||
| HGF - Programmthema: | Robotik | ||||||||||||
| DLR - Schwerpunkt: | Raumfahrt | ||||||||||||
| DLR - Forschungsgebiet: | R RO - Robotik | ||||||||||||
| DLR - Teilgebiet (Projekt, Vorhaben): | R - Basistechnologien [RO] | ||||||||||||
| Standort: | Oberpfaffenhofen | ||||||||||||
| Institute & Einrichtungen: | Institut für Robotik und Mechatronik (ab 2013) | ||||||||||||
| Hinterlegt von: | Strobl, Dr.-Ing. Klaus H. | ||||||||||||
| Hinterlegt am: | 10 Sep 2026 11:47 | ||||||||||||
| Letzte Änderung: | 14 Sep 2026 11:35 |
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